Paleologou Katerina E, Schmid Adrian W, Rospigliosi Carla C, Kim Hai-Young, Lamberto Gonzalo R, Fredenburg Ross A, Lansbury Peter T, Fernandez Claudio O, Eliezer David, Zweckstetter Markus, Lashuel Hilal A
Laboratory of Molecular Neurobiology and Neuroproteomics, Brain Mind Institute, Ecole Polytechnique Federale de Lausanne, CH-1015 Lausanne, Switzerland.
J Biol Chem. 2008 Jun 13;283(24):16895-905. doi: 10.1074/jbc.M800747200. Epub 2008 Mar 14.
alpha-Synuclein (alpha-syn) phosphorylation at serine 129 is characteristic of Parkinson disease (PD) and related alpha-synulceinopathies. However, whether phosphorylation promotes or inhibits alpha-syn aggregation and neurotoxicity in vivo remains unknown. This understanding is critical for elucidating the role of alpha-syn in the pathogenesis of PD and for development of therapeutic strategies for PD. To better understand the structural and molecular consequences of Ser-129 phosphorylation, we compared the biochemical, structural, and membrane binding properties of wild type alpha-syn to those of the phosphorylation mimics (S129E, S129D) as well as of in vitro phosphorylated alpha-syn using a battery of biophysical techniques. Our results demonstrate that phosphorylation at Ser-129 increases the conformational flexibility of alpha-syn and inhibits its fibrillogenesis in vitro but does not perturb its membrane-bound conformation. In addition, we show that the phosphorylation mimics (S129E/D) do not reproduce the effect of phosphorylation on the structural and aggregation properties of alpha-syn in vitro. Our findings have significant implications for current strategies to elucidate the role of phosphorylation in modulating protein structure and function in health and disease and provide novel insight into the underlying mechanisms that govern alpha-syn aggregation and toxicity in PD and related alpha-synulceinopathies.
α-突触核蛋白(α-syn)丝氨酸129位点的磷酸化是帕金森病(PD)及相关α-突触核蛋白病的特征。然而,磷酸化在体内是促进还是抑制α-syn聚集和神经毒性仍不清楚。这一认识对于阐明α-syn在PD发病机制中的作用以及开发PD治疗策略至关重要。为了更好地理解丝氨酸129磷酸化的结构和分子后果,我们使用一系列生物物理技术,将野生型α-syn与磷酸化模拟物(S129E、S129D)以及体外磷酸化的α-syn的生化、结构和膜结合特性进行了比较。我们的结果表明,丝氨酸129位点的磷酸化增加了α-syn的构象灵活性,并在体外抑制其纤维形成,但不干扰其膜结合构象。此外,我们表明磷酸化模拟物(S129E/D)在体外不能重现磷酸化对α-syn结构和聚集特性的影响。我们的发现对当前阐明磷酸化在调节健康和疾病中蛋白质结构和功能作用的策略具有重要意义,并为控制PD及相关α-突触核蛋白病中α-syn聚集和毒性的潜在机制提供了新的见解。